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Autophagy|September 22, 2015
Disease relevance of phosphorylated ubiquitin (p-S65-Ub)Fabienne C Fiesel, Wolfdieter Springer
The FEBS Journal|July 23, 2011
TDP-43 and FUS/TLS: cellular functions and implications for neurodegenerationFabienne C Fiesel, Philipp J Kahle
Bio-Protocol|June 3, 2017
Non-radioactive <i>in vitro</i> PINK1 Kinase Assays Using Ubiquitin or Parkin as SubstrateFabienne C Fiesel, Roman Hudec, Wolfdieter Springer
Biochemical Society Transactions|April 8, 2015
Activation of the E3 ubiquitin ligase ParkinThomas R Caulfield, Fabienne C Fiesel, Wolfdieter Springer
Molecular Neurodegeneration Advances|May 11, 2026
The modifier matrix: emerging roles of ubiquitin-like proteins in Alzheimer's diseaseTingxiang Yan, Justine Vaquer, Wolfdieter Springer, et al.
Journal of Molecular Biology|February 17, 2020
Autophagy in Parkinson's DiseaseXu Hou, Jens O Watzlawik, Fabienne C Fiesel, et al.
Oncotarget|January 2, 2018
Mitochondrial targeted HSP90 inhibitor Gamitrinib-TPP (G-TPP) induces PINK1/Parkin-dependent mitophagyFabienne C Fiesel, Elle D James, Roman Hudec, et al.
Journal of Cell Science|June 15, 2014
A specific subset of E2 ubiquitin-conjugating enzymes regulate Parkin activation and mitophagy differentlyFabienne C Fiesel, Elisabeth L Moussaud-Lamodière, Maya Ando, et al.
Molecular Neurodegeneration|September 1, 2011
TDP-43 knockdown impairs neurite outgrowth dependent on its target histone deacetylase 6Fabienne C Fiesel, Christine Schurr, Stephanie S Weber, et al.
Journal of Parkinson'S Disease|December 3, 2016
PINK1, Parkin, and Mitochondrial Quality Control: What can we Learn about Parkinson's Disease Pathobiology?Dominika Truban, Xu Hou, Thomas R Caulfield, et al.
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